DocumentCode :
3342061
Title :
Optimizing the front side metallization process using the Corescan
Author :
van der Heide, A.S.H. ; Bultman, J.H. ; Hoomstra, J. ; Schönecker, A. ; Wyers, G.P. ; Sinke, W.C.
Author_Institution :
ECN Solar Energy, Petten, Netherlands
fYear :
2002
fDate :
19-24 May 2002
Firstpage :
340
Lastpage :
343
Abstract :
In solar cell manufacturing it is difficult to optimize screen printed front side metallization, in particular to obtain good contact over the entire cell. The Corescan enables mapping of contact resistance of full cell surfaces. Using these mappings, it is possible to diagnose and exclude reasons for poor contact formation. In this study, several process conditions have been studied. Cross-belt temperature non-uniformity in the firing furnace turns out to be a reason for large contact resistance differences. This shows that the acceptable firing temperature range can be considerably increased if a constant temperature profile across the belt width is realized. Further, it is shown that plasma etching for isolation gives cause for an increase of the contact resistance of the fingers at the cell edges. Finally, contact resistance differences related to emitter non-uniformity are found. To summarize, the Corescan is a powerful tool that enables easy optimization of front side metallization.
Keywords :
contact resistance; metallisation; optimisation; solar cells; Corescan; constant temperature profile; contact resistance mapping; cross-belt temperature nonuniformity; firing furnace; front side metallization process optimisation; plasma etching; poor contact formation; solar cell manufacturing; Belts; Contact resistance; Firing; Furnaces; Manufacturing; Metallization; Photovoltaic cells; Plasma temperature; Surface resistance; Temperature distribution;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Photovoltaic Specialists Conference, 2002. Conference Record of the Twenty-Ninth IEEE
ISSN :
1060-8371
Print_ISBN :
0-7803-7471-1
Type :
conf
DOI :
10.1109/PVSC.2002.1190528
Filename :
1190528
Link To Document :
بازگشت